Documents / Report
This Defense Intelligence Reference Document from the Defense Intelligence Agency, dated 30 March 2010 and produced under the Advanced Aerospace Weapon System Applications (AAWSA) Program, compares lone maverick inventors with corporate inventors working in large organizations. It focuses on unconventional energy and propulsion, including free energy and antigravity claims. It sorts inventors into five types. It concludes that trained maverick inventors (Types 3 and 4) are the most likely source of the next innovations, and that untrained inventors deserve only casual watching.
UNCLASSIFIED/ ;<F&R: 8FFI8Iilrt 1/181!! 8HL'f a technology. Also, they are not generally plagued by the insecurities of the Type 1 inventor about subjecting their inventions to outside scrutiny, and some will be bold enough to publish in respected scientific journals (Reference 23). This means they keep better lab notes than Type 1 inventors. It does not mean they are intrinsically better scientists or inventors. Type 2 inventors generally have a bit more training in physics and sometimes start with a theory of which they request analysis from a local university professor, for example. Usually the theory is either partially formed or is not directly relevant to the proposed invention. The professor dutifully examines the theory presented while not being informed of the overall use to which his work is to be put and makes a pronouncement that the inventor can usually twist one way or another to suit his future fundraising efforts (Reference 24). Often the inventor has access to various theories about energy or gravity that are posted in non-peer-reviewed media and uses these to initiate or justify the proposed invention. Type 2 inventors have a generally greater success at securing a patent, as they have a better basis on which to make a claim and can afford better patent lawyers. Some of the more advanced Type 2 inventors realize they need to start with a more pure- physics experimental approach rather than going straight for the applied invention, although these are rare (Reference 23). Once the initial concept has proved infeasible on the bench, these inventors can burn through a large amount of additional money in a scatter-shot approach, trying to save face and what little money is left. Some will continually scan the Internet or underground press for other likely energy candidates to switch allegiance to (Reference 14, 15), or will simply convince other gullible investors to continue to prop up the technology with ever-more contorted descriptions of what is needed to succeed. Eventually the house of cards collapses, and all the players go home, licking their financial and psychological wounds. This occurs when an investor finally starts asking the tough technical and measurement questions that should have been addressed at the outset. What can be learned from the Type 2 inventor? On the one hand, these inventors can be much more dangerous than Type 1 inventors, as they can use their enhanced financial clout to make it appear as if they have something of value and thereby attract capital that might otherwise be used in more fruitful pursuits. On the other hand, Type 2 inventors can serve a useful purpose in showing others where not to tread. Their ability to instantiate some degree of professional sophistication-for example, university professor-marginally increases the likelihood of a true innovation. However, the personality of the Type 2 inventor will dictate their receptiveness to external advice. The Type 3 Inventor As the inventor gains more formal training, the foundation for the innovations tends to be a hypothesis or mathematical model leading to basic experiments, as opposed to starting with a full-blown embodiment of the hoped-for invention. In the best case, this is a staged approach in which the inventor already has sufficient knowledge about the area to know how to design a succession of experiments and interpret the results properly to make increasingly accurate assessments of the likely validity of the invention. Optimally, the hypothesis is based on an extension of known physical laws 8 UNCLASSIFIED/ /r;Oll oi;i;1111,t.k Wliili a,11e~·
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 19 pages are in the text index: search them above, or from the library's search.